电动/混合动力汽车不同传动系统拓扑结构的热评估

J. Estima, A. M. Marques Cardoso
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引用次数: 5

摘要

本文的目的是研究应用于电动/混合动力汽车的永磁同步电动机(PMSM)驱动系统中,传动系拓扑结构对不同部件温度的影响。温度是一个关键参数,因为它直接关系到设备的寿命和可靠性。这对永磁同步电动机尤其重要,因为它也会影响永磁体产生的磁通量。因此,本文对应用于电动/混合动力汽车的两种不同的传动系统拓扑结构进行了评估。第一个包括直接为逆变器供电的电池组和PMSM。在第二种拓扑结构中,在电池和逆变器直流电源之间连接一个升压双向dc-dc变换器。在该拓扑结构中还应用了可变电压控制来控制逆变器供电电压。详细的温度分析以三维图的形式呈现,允许比较两种拓扑结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal evaluation of different drive train topologies for electric/hybrid vehicles
The aim of this paper is to study the influence of the drive train topology on the temperature of the different components in permanent magnet synchronous motor (PMSM) drives applied to electric/hybrid vehicles. The temperature is a critical parameter because it is directly related to the lifetime and reliability of a device. This is particular important for PMSMs since it also influences the magnetic flux produced by the permanent magnets. Thus, in this paper two different drive train topologies applied to electric/hybrid vehicles are evaluated. The first one comprises a battery pack that directly supplies the inverter, and a PMSM. In the second topology, a step-up bidirectional dc-dc converter is connected between the batteries and the inverter dc supply. A variable voltage control is also applied in this topology to control the inverter supplying voltage. A detailed temperature analysis is presented in the format of three-dimension maps that allow to compare both topologies.
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